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Application deadline: 31/03/2026 Research theme: Biocatalysis and Protein Engineering Centre for Sustainable Synthesis – BioProcess How to apply: https://www.mib.manchester.ac.uk/research/centres
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digital twins with quantified uncertainty. This project will develop a measurement-science-driven digital twin framework for energy assets, initially demonstrated on PV modules/fields and battery systems
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that other techniques cannot access. This combination of catalytic chemistry and large-facility science is rare at PhD level and will give the student a genuinely differentiated skill set. The student will
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an excellent CV are strongly encouraged to contact the supervisor to discuss their opportunities. The ideal candidate has a Master degree in chemistry, physics, chemical engineering, or material science. Solid
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Application deadline: 31/03/2026 Research theme: Biocatalysis and Protein Engineering Centre for Sustainable Synthesis – BioProcess How to apply: https://www.mib.manchester.ac.uk/research/centres
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under the supervision of Dr Mehrdad Vasheghani Farahani from Department of Chemical Engineering, with co-supervision by Professor Ian Kinloch from Department of Materials. The successful candidate will
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thermal sciences and the motivation to work across neutronics, heat transfer, and simulation workflows. Eligibility Applicants should have (or expect to achieve) a strong degree, i.e., at least a 2.1
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industry. Applicants should have, or expect to achieve, at least a 2.1 honours degree or a master’s (or international equivalent) in a relevant science or engineering related discipline. Please contact
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surcharge) costs. This PhD project will investigate how the cell envelope of Mycobacterium tuberculosis can be chemically engineered and how these changes influence pathogen biology by combining chemistry
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nutrients to survive within the human host, combining biochemistry, chemistry, structural biology and microbiology approaches. Tuberculosis (TB), caused by the bacterial pathogen Mycobacterium tuberculosis